WO2023206178A1 - Procédés de coexistence de communication de liaison latérale selon de multiples technologies d'accès radioélectrique, et dispositifs associés - Google Patents

Procédés de coexistence de communication de liaison latérale selon de multiples technologies d'accès radioélectrique, et dispositifs associés Download PDF

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Publication number
WO2023206178A1
WO2023206178A1 PCT/CN2022/089677 CN2022089677W WO2023206178A1 WO 2023206178 A1 WO2023206178 A1 WO 2023206178A1 CN 2022089677 W CN2022089677 W CN 2022089677W WO 2023206178 A1 WO2023206178 A1 WO 2023206178A1
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Prior art keywords
access technology
radio access
communication
sidelink
sidelink communication
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PCT/CN2022/089677
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English (en)
Chinese (zh)
Inventor
赵群
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北京小米移动软件有限公司
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Priority to PCT/CN2022/089677 priority Critical patent/WO2023206178A1/fr
Priority to CN202280001379.0A priority patent/CN115024004A/zh
Publication of WO2023206178A1 publication Critical patent/WO2023206178A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource

Definitions

  • the present disclosure relates to the field of communication technology, and in particular, to a multi-radio access technology sidelink communication coexistence method and device.
  • the terminal equipment uses the new air interface NR sidelink sidelink and the long-term evolution LTE sidelink to communicate at the same time, due to the incompatibility between the NR sidelink and the LTE sidelink, the NR sidelink receiver cannot send or receive the LTE sidelink signal. LTE sidelink also cannot send or receive NR sidelink signals. Both NR sidelink and LTE sidelink need to reduce interference through resource reservation and channel monitoring (sensing). Therefore, when the same resources are selected at the same time, transmission resource collisions will occur, reducing transmission reliability.
  • Embodiments of the present disclosure provide a multi-wireless access technology sidelink communication coexistence method and device, which can be applied to terminal equipment that communicates through the second wireless access technology sidelink.
  • the terminal equipment can be based on the first wireless access technology sidelink communication.
  • the channel monitoring result of the access technology side link communication is used to execute the process of the second wireless access technology side link communication, thereby realizing the second wireless access technology side link communication to the first wireless access technology side link.
  • the avoidance of resource reservation for link communication avoids collision of transmission resources and enables the first radio access technology side link and the second radio access technology side link to dynamically share transmission resources on the same carrier frequency, increasing Transmission resource usage efficiency.
  • embodiments of the present disclosure provide a multi-radio access technology sidelink communication coexistence method.
  • the method includes: performing channel monitoring on the first radio access technology sidelink communication;
  • the channel monitoring result of the access technology side link communication is used to execute the process of the second radio access technology side link communication; wherein the process includes at least one of the following processes: resource selection or resource reselection; Downlink physical channel transmission; re-evaluation of resources to be transmitted; assessment of occupancy of resources to be transmitted; determination of auxiliary resource set information contained in inter-user assistance information.
  • the terminal device can execute the process of the sidelink communication of the second radio access technology based on the channel monitoring result of the sidelink communication of the first radio access technology, thereby realizing the second radio access technology.
  • Side link communication avoids the resource reservation of the first radio access technology side link communication, avoids transmission resource collision, and realizes the first radio access technology side link and the second radio access technology side link Links dynamically share transmission resources on the same carrier frequency, increasing transmission resource usage efficiency.
  • the first wireless access technology is Long Term Evolution LTE wireless access technology
  • the second wireless access technology is New Wireless NR wireless communication technology.
  • the channel monitoring of the first wireless access technology sidelink communication includes at least one of the following: receiving the sidelink communication of the first wireless access technology sidelink communication. Physical control channel PSCCH; determine the sidelink reference signal received power S-RSRP and/or sidelink corresponding to the sidelink control information SCI in the PSCCH of the first radio access technology sidelink communication Channel Received Signal Strength Indicator S-RSSI measurement.
  • performing channel monitoring on the first radio access technology sidelink communication includes: performing channel monitoring in the resource pool of the first radio access technology sidelink communication; wherein , the resource pool for side link communication of the first wireless access technology and the resource pool for side link communication of the second wireless access technology have an overlapping portion of time and frequency resources; the side link of the first wireless access technology
  • the resource pool for link communication includes the time and frequency resources for side-link communication of the first wireless technology
  • the resource pool for side-link communication of the second wireless technology includes the time and frequency for side-link communication of the second wireless technology. resource.
  • the process of executing the sidelink communication of the second radio access technology based on the channel monitoring result of the sidelink communication of the first radio access technology includes: performing the When selecting or reselecting resources for side link communication of the second radio access technology, based on the channel monitoring results of side link communication of the first radio access technology, the side link of the second radio access technology Candidate resources are excluded from the set of candidate resources for link communication.
  • the channel monitoring result according to the first radio access technology sidelink communication is in the candidate resource set for the second radio access technology sidelink communication.
  • Excluding candidate resources includes: determining, based on the channel monitoring result of the first radio access technology sidelink communication, the indication in the SCI of the first radio access technology sidelink communication received during channel monitoring or Reserved time-frequency resources; exclude candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI from the set of candidate resources for sidelink communication of the second radio access technology.
  • the candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are excluded from the candidate resource set for sidelink communication of the second radio access technology, including: Determining S-RSRP and/or S-RSSI measurements associated with the SCI; excluding a first candidate resource from a set of candidate resources for the second radio access technology sidelink communication, wherein the first A candidate resource is a candidate resource that overlaps with the time-frequency resource indicated or reserved in the SCI, and the S-RSRP and/or S-RSSI measurement value associated with the SCI is greater than or equal to the first threshold.
  • the first threshold and the priority of the first radio access technology sidelink communication and the priority of the second radio access technology sidelink communication indicated by the SCI exist. Mapping relationship; and/or, the first threshold and the second threshold are independently configured or pre-configured, wherein the second threshold is a candidate based on the channel monitoring result of the second radio access technology sidelink communication.
  • the threshold to use when excluding resources.
  • the terminal device can exclude candidate resources from the candidate resource set of NR sidelink communication based on the channel monitoring results of LTE sidelink communication, thereby realizing the avoidance of NR sidelink communication to LTE sidelink communication and avoiding transmission resource collision.
  • the process of executing the sidelink communication of the second radio access technology based on the channel monitoring result of the sidelink communication of the first radio access technology includes: performing the When the sidelink physical channel of the second wireless access technology sidelink communication is sent, it is determined whether to send the second wireless access technology based on the channel monitoring result of the first wireless access technology sidelink communication.
  • Technical sidelink physical channel for sidelink communications includes: performing the When the sidelink physical channel of the second wireless access technology sidelink communication is sent, it is determined whether to send the second wireless access technology based on the channel monitoring result of the first wireless access technology sidelink communication.
  • determining whether to send the sidelink communication of the second radio access technology sidelink communication is based on the channel monitoring result of the first radio access technology sidelink communication.
  • the link physical channel includes: determining the indication in the SCI of the first wireless access technology sidelink communication received during channel monitoring based on the channel monitoring result of the first wireless access technology sidelink communication. or reserved time-frequency resources; cancel the transmission of the sidelink physical channel of the second radio access technology sidelink communication, wherein the time-frequency resources indicated or reserved in the SCI are the same as the third
  • the time-frequency resources used by the physical channel of the sidelink to be sent in the sidelink communication of the two radio access technologies overlap; or, the sidelink of the sidelink communication of the second radio access technology is sent.
  • Physical channel wherein there is no resource overlap between the time-frequency resources indicated or reserved in the SCI and the time-frequency resources used by the physical channel of the sidelink to be sent for sidelink communication of the second radio access technology.
  • determining whether to send the sidelink physical channel of the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication and further include:
  • the third threshold is related to the priority of sidelink communication of the first radio access technology and the priority of sidelink physical channel transmission of the second radio access technology indicated by the SCI. level, there is a mapping relationship.
  • the terminal device can determine whether to send the sidelink physical channel of the NR sidelink communication based on the channel monitoring results of the LTE sidelink communication, thereby realizing the avoidance of the LTE sidelink communication by the NR sidelink communication and avoiding transmission resource collision. , realize the dynamic sharing of transmission resources on the same carrier frequency by LTE sidelink and NR sidelink, and increase the efficiency of transmission resource usage.
  • the process of executing the sidelink communication of the second radio access technology based on the channel monitoring result of the sidelink communication of the first radio access technology includes: performing the During the re-evaluation and/or occupancy assessment of the resources to be transmitted in the sidelink communication of the second radio access technology, it is determined whether to perform the third radio access technology sidelink communication based on the channel monitoring result of the sidelink communication of the first radio access technology. 2. Resource reselection for sidelink communication of wireless access technology.
  • time-frequency resources perform resource reselection on the physical sidelink control channel PSCCH/physical sidelink shared channel PSSCH of the second radio access technology sidelink communication sent using the resources to be transmitted, wherein, The time-frequency resources indicated or reserved in the SCI overlap with the resources to be transmitted; or, the resources to be transmitted are used to perform sidelink transmission of the second radio access technology, wherein, There is no resource overlap between the time-frequency resources indicated or reserved in the SCI and the resources to be transmitted.
  • determining whether to perform resource reselection for the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication further includes: determining S-RSRP and/or S-RSSI measurement values associated with the SCI; wherein the time-frequency resources indicated or reserved in the SCI overlap with the resources to be transmitted, and are associated with the SCI
  • the S-RSRP and/or S-RSSI measurement value is greater than or equal to the fourth threshold, perform resource reselection on the PSCCH/PSSCH of the second radio access technology sidelink communication transmitted using the resources to be transmitted; or,
  • the time-frequency resources indicated or reserved in the SCI do not overlap with the resources to be transmitted, and/or the S-RSRP and/or S-RSSI measurement values associated with the SCI are less than the fourth Threshold, use the resource to be transmitted to perform sidelink transmission of the second radio access technology.
  • the fourth threshold is related to the priority of the first radio access technology sidelink communication indicated by the SCI and the PSCCH/PSSCH transmission of the second radio access technology sidelink communication. Priority, there is a mapping relationship.
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication, thereby realizing the avoidance of NR sidelink communication to LTE sidelink communication, avoiding transmission resource collision, and realizing LTE Sidelink and NR sidelink dynamically share transmission resources on the same carrier frequency to increase the efficiency of transmission resource usage.
  • the process of executing the sidelink communication of the second radio access technology based on the channel monitoring result of the sidelink communication of the first radio access technology includes: performing a terminal device When inter-UE cooperates, the auxiliary resource set information included in the inter-user assistance information is determined according to the channel monitoring result of the first radio access technology sidelink communication.
  • the auxiliary resource set information is a recommended resource set
  • the method further includes: based on the channel monitoring result of the first radio access technology sidelink communication, in the The candidate resources are excluded from the set of candidate resources for sidelink communication of the second radio access technology.
  • excluding candidate resources from the candidate resource set of the second radio access technology sidelink communication based on the channel monitoring results of the first radio access technology sidelink communication includes: Determine the time-frequency resources indicated or reserved in the SCI of the first radio access technology side link communication received during channel monitoring according to the channel monitoring results of the first radio access technology side link communication ; Exclude candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI from the set of candidate resources for sidelink communication of the second radio access technology.
  • the candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are excluded from the candidate resource set for sidelink communication of the second radio access technology, including: Determining an S-RSRP and/or S-RSSI measurement value associated with the SCI; excluding a second candidate resource from a set of candidate resources for the second radio access technology sidelink communication, wherein the first The second candidate resource is a candidate resource that overlaps with the time-frequency resource indicated or reserved in the SCI, and the S-RSRP and/or S-RSSI measurement value associated with the SCI is greater than or equal to the fifth threshold.
  • the fifth threshold corresponds to the priority of the first radio access technology sidelink communication indicated by the SCI and the inter-user assistance of the second radio access technology sidelink communication.
  • the priority of The threshold used when excluding candidate resources based on channel monitoring results.
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication, and exclude candidate resources from the candidate resource set, thereby achieving NR sidelink communication avoids LTE sidelink communication, avoiding transmission resource collisions, enabling LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, and increasing transmission resource usage efficiency.
  • the auxiliary resource set information is a resource set that is not recommended, and the method further includes: based on the channel monitoring result of the first radio access technology sidelink communication, from the Determine the resources in the non-recommended resource set from the candidate resource set for sidelink communication of the second radio access technology.
  • the non-recommended resource is determined from a candidate resource set of the second radio access technology sidelink communication according to the channel monitoring result of the first radio access technology sidelink communication.
  • the resources in the resource set include: determining the SCI of the first radio access technology sidelink communication received during channel monitoring based on the channel monitoring result of the first radio access technology sidelink communication. Indicated or reserved time-frequency resources; determining the third candidate resource in the candidate resource set for sidelink communication of the second radio access technology as a resource in the non-recommended resource set, wherein, The third candidate resource is a candidate resource that overlaps with the time-frequency resource indicated or reserved in the SCI.
  • determining the third candidate resource in the set of candidate resources for sidelink communication of the second radio access technology as a resource in the set of unrecommended resources includes: determining the same as the set of resources that are not recommended. S-RSRP and/or S-RSSI measurement values associated with the SCI; determining the fourth candidate resource in the candidate resource set for the second radio access technology sidelink communication as the non-recommended resource set resources in, wherein the fourth candidate resource is an overlapping portion with the time-frequency resource indicated or reserved in the SCI, and the S-RSRP and/or S-RSSI measurement value associated with the SCI is greater than or candidate resources equal to the seventh threshold.
  • the seventh threshold corresponds to the priority of the first radio access technology sidelink communication indicated by the SCI and the inter-user assistance of the second radio access technology sidelink communication.
  • the priority of Channel monitoring results, the threshold used when determining the resources in the non-recommended resource set.
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication, and determine the resources in the non-recommended resource set in the candidate resource set, thereby realizing NR Sidelink communication avoids LTE sidelink communication to avoid transmission resource collisions, enables LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, and increases transmission resource usage efficiency.
  • embodiments of the present disclosure provide a multi-radio access technology sidelink communication coexistence method.
  • the method is executed by a network side device.
  • the method includes: sending configuration information to a terminal device; the terminal device adopts the The terminal equipment for side link communication of the second radio access technology, the configuration information includes a threshold configured for the terminal equipment, and the threshold is used by the terminal equipment for side link communication according to the first radio access technology.
  • the network side device can send configuration information to the terminal device, so that the terminal device can perform the second wireless access technology based on the configuration information and the channel monitoring results of the first wireless access technology sidelink communication.
  • the process of wireless access technology side link communication is implemented to avoid the resource reservation of the first wireless access technology side link communication for side link communication of the second wireless access technology, avoid transmission resource collision, and realize the second wireless access technology side link communication.
  • the first radio access technology side link and the second radio access technology side link dynamically share transmission resources on the same carrier frequency, thereby increasing transmission resource usage efficiency.
  • inventions of the present disclosure provide a communication device.
  • the communication device includes: a transceiver module configured to perform channel monitoring on the first wireless access technology sidelink communication; and a processing module configured to perform channel monitoring according to the first wireless access technology sidelink communication.
  • the channel monitoring result of the radio access technology side link communication is used to execute the process of the second radio access technology side link communication; wherein the process includes at least one of the following processes: resource selection or resource reselection; Sidelink physical channel transmission; re-evaluation of resources to be transmitted; assessment of occupancy of resources to be transmitted; determination of auxiliary resource set information contained in inter-user assistance information.
  • the first wireless access technology is Long Term Evolution LTE wireless access technology
  • the second wireless access technology is New Wireless NR wireless communication technology.
  • the transceiver module is specifically configured to: receive the sidelink physical control channel PSCCH of the first radio access technology sidelink communication; determine the first radio access technology sidelink communication.
  • the transceiver module is specifically configured to: perform channel monitoring in the resource pool of the first radio access technology side link communication; wherein the first radio access technology side link
  • the resource pool for side-link communication of the second wireless access technology has an overlapping portion of time and frequency resources; the resource pool for side-link communication of the first wireless access technology includes the resources for performing the first Time and frequency resources for wireless technology side link communication; the resource pool for side link communication of the second wireless technology includes time and frequency resources for side link communication of the second wireless technology.
  • the processing module is specifically configured to: when performing resource selection or resource reselection for the second radio access technology sidelink communication, according to the first radio access technology sidelink communication According to the channel monitoring results of channel communication, candidate resources are excluded from the set of candidate resources for sidelink communication of the second radio access technology.
  • the processing module is specifically configured to: determine, according to the channel monitoring result of the first wireless access technology sidelink communication, the first wireless access technology received during channel monitoring.
  • the time-frequency resources indicated or reserved in the SCI of the wireless access technology side link communication; candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are obtained from the second wireless access technology side. excluded from the set of candidate resources for line link communications.
  • the processing module is specifically configured to: determine S-RSRP and/or S-RSSI measurement values associated with the SCI; and obtain a set of candidate resources for sidelink communication from the second radio access technology Exclude the first candidate resource, wherein the first candidate resource is the S-RSRP and/or S-RSSI that overlaps with the time-frequency resource indicated or reserved in the SCI, and is associated with the SCI Candidate resources with measured values greater than or equal to the first threshold.
  • the first threshold and the priority of the first radio access technology sidelink communication and the priority of the second radio access technology sidelink communication indicated by the SCI exist. Mapping relationship; and/or, the first threshold and the second threshold are independently configured or pre-configured, wherein the second threshold is a candidate based on the channel monitoring result of the second radio access technology sidelink communication.
  • the threshold to use when excluding resources.
  • the processing module is specifically configured to: when transmitting a sidelink physical channel of sidelink communication of the second radio access technology, perform sidelink communication according to the first radio access technology.
  • the channel monitoring result of the link communication determines whether to send the sidelink physical channel of the second radio access technology sidelink communication.
  • the processing module is specifically configured to: determine, according to the channel monitoring result of the first wireless access technology sidelink communication, the first wireless access technology received during channel monitoring. time-frequency resources indicated or reserved in the SCI of the second radio access technology sidelink communication; canceling the transmission of the sidelink physical channel of the second radio access technology sidelink communication, wherein the time-frequency resources indicated in the SCI Or the reserved time-frequency resources overlap with the time-frequency resources used by the sidelink physical channel to be sent for sidelink communication of the second wireless access technology; or, sending the second wireless access technology
  • the processing module is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; wherein the time-frequency resources indicated or reserved in the SCI are consistent with the first The time-frequency resources used by the sidelink physical channel to be transmitted in the sidelink communication of the two radio access technologies overlap, and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or is equal to the third threshold, cancel the transmission of the sidelink physical channel of the second radio access technology sidelink communication; or, the time-frequency resources indicated or reserved in the SCI are not the same as those of the second radio access technology.
  • the third threshold is used to send the sidelink physical channel of the second radio access technology sidelink communication.
  • the third threshold is related to the priority of sidelink communication of the first radio access technology and the priority of sidelink physical channel transmission of the second radio access technology indicated by the SCI. level, there is a mapping relationship.
  • the processing module is specifically configured to: when performing re-evaluation and/or occupancy assessment of resources to be transmitted for sidelink communication of the second radio access technology, based on the first radio access technology
  • the channel monitoring result of the second radio access technology side link communication is used to determine whether to perform resource reselection for the second radio access technology side link communication.
  • the processing module is specifically configured to: determine, according to the channel monitoring result of the first wireless access technology sidelink communication, the first wireless access technology received during channel monitoring.
  • the sidelink shared channel PSSCH performs resource reselection, where the time-frequency resources indicated or reserved in the SCI overlap with the resources to be transmitted; or, the resources to be transmitted are used to perform the second wireless Sidelink transmission of access technology, wherein the time-frequency resources indicated or reserved in the SCI do not overlap with the resources to be transmitted.
  • the processing module is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; wherein the time-frequency resources indicated or reserved in the SCI are consistent with the to-be- There is resource overlap in transmission resources, and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or equal to the fourth threshold, for the second radio access technology sidelink sent using the resources to be transmitted Resource reselection is performed on PSCCH/PSSCH for channel communication; or, the time-frequency resources indicated or reserved in the SCI do not overlap with the resources to be transmitted, and/or, the S-RSRP associated with the SCI and/or the S-RSSI measurement value is less than the fourth threshold, the resources to be transmitted are used for sidelink transmission of the second radio access technology.
  • the fourth threshold is related to the priority of the first radio access technology sidelink communication indicated by the SCI and the PSCCH/PSSCH transmission of the second radio access technology sidelink communication. Priority, there is a mapping relationship.
  • the processing module is specifically configured to: when performing cooperation between terminal equipment UE, determine whether the inter-user assistance information contains auxiliary resource collection information.
  • the processing module is further configured to: based on the channel monitoring result of the first radio access technology sidelink communication, perform the following steps on the second radio access technology sidelink: Candidate resources are excluded from the communication candidate resource set.
  • the processing module is specifically configured to: determine the first radio access technology sidelink received in channel monitoring according to the channel monitoring result of the first radio access technology sidelink communication.
  • the time-frequency resources indicated or reserved in the SCI of the communication candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI, candidates for sidelink communication from the second radio access technology Excluded from resource collection.
  • the processing module is specifically configured to: determine S-RSRP and/or S-RSSI measurement values associated with the SCI; and obtain a set of candidate resources for sidelink communication from the second radio access technology Exclude the second candidate resource, wherein the second candidate resource is the S-RSRP and/or S-RSSI that overlaps with the time-frequency resource indicated or reserved in the SCI, and is associated with the SCI Candidate resources with a measurement value greater than or equal to the fifth threshold.
  • the fifth threshold corresponds to the priority of the first radio access technology sidelink communication indicated by the SCI and the inter-user assistance of the second radio access technology sidelink communication.
  • the priority of The threshold used when excluding candidate resources based on channel monitoring results.
  • the auxiliary resource set information is a resource set that is not recommended
  • the processing module is further configured to: according to the channel monitoring result of the first radio access technology sidelink communication, Determine resources in the set of unrecommended resources from a set of candidate resources for sidelink communication of the second radio access technology.
  • the processing module is specifically configured to: determine the first radio access technology sidelink received in channel monitoring according to the channel monitoring result of the first radio access technology sidelink communication. time-frequency resources indicated or reserved in the SCI of the communication; determining the third candidate resource in the candidate resource set of the second radio access technology sidelink communication as a resource in the non-recommended resource set , wherein the third candidate resource is a candidate resource that overlaps with the time-frequency resource indicated or reserved in the SCI.
  • the processing module is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; and combine the set of candidate resources for sidelink communication of the second radio access technology
  • the fourth candidate resource in is determined to be a resource in the non-recommended resource set, wherein the fourth candidate resource is an overlapped part with the time-frequency resource indicated or reserved in the SCI, and is identical to the time-frequency resource indicated or reserved in the SCI.
  • the seventh threshold corresponds to the priority of the first radio access technology sidelink communication indicated by the SCI and the inter-user assistance of the second radio access technology sidelink communication.
  • the priority of Channel monitoring results, the threshold used when determining the resources in the non-recommended resource set.
  • embodiments of the present disclosure provide a communication device, which includes a transceiver module for sending configuration information to a terminal device; the terminal device is a terminal that adopts sidelink communication of the second wireless access technology.
  • the configuration information includes a threshold configured for the terminal device, the threshold is used by the terminal device to perform the second radio access technology side according to the channel monitoring result of the first radio access technology side link communication.
  • an embodiment of the present disclosure provides a communication device.
  • the communication device includes a processor.
  • the processor calls a computer program in a memory, it executes the method described in the first aspect.
  • an embodiment of the present disclosure provides a communication device.
  • the communication device includes a processor.
  • the processor calls a computer program in a memory, it executes the method described in the second aspect.
  • an embodiment of the present disclosure provides a communication device.
  • the communication device includes a processor and a memory, and a computer program is stored in the memory; the processor executes the computer program stored in the memory, so that the communication device executes The method described in the first aspect above.
  • an embodiment of the present disclosure provides a communication device.
  • the communication device includes a processor and a memory, and a computer program is stored in the memory; the processor executes the computer program stored in the memory, so that the communication device executes The method described in the second aspect above.
  • an embodiment of the present disclosure provides a communication device.
  • the device includes a processor and an interface circuit.
  • the interface circuit is used to receive code instructions and transmit them to the processor.
  • the processor is used to run the code instructions to cause the The device performs the method described in the first aspect.
  • an embodiment of the present disclosure provides a communication device.
  • the device includes a processor and an interface circuit.
  • the interface circuit is used to receive code instructions and transmit them to the processor.
  • the processor is used to run the code instructions to cause the The device performs the method described in the second aspect above.
  • embodiments of the present disclosure provide a multi-radio access technology sidelink communication coexistence method system, which system includes the communication device described in the third aspect and the communication device described in the fourth aspect, or, the system The system includes the communication device described in the fifth aspect and the communication device described in the sixth aspect, or the system includes the communication device described in the seventh aspect and the communication device described in the eighth aspect, or the system includes the ninth aspect The communication device according to the first aspect and the communication device according to the tenth aspect.
  • embodiments of the present invention provide a computer-readable storage medium for storing instructions used by the above-mentioned terminal equipment. When the instructions are executed, the terminal equipment is caused to execute the above-mentioned first aspect. method.
  • embodiments of the present invention provide a readable storage medium for storing instructions used by the above-mentioned network-side device. When the instructions are executed, the network-side device is caused to execute the above-mentioned second aspect. Methods.
  • the present disclosure also provides a computer program product including a computer program, which when run on a computer causes the computer to execute the method described in the first aspect.
  • the present disclosure also provides a computer program product including a computer program, which, when run on a computer, causes the computer to execute the method described in the second aspect.
  • the present disclosure provides a chip system, which includes at least one processor and an interface for supporting a terminal device to implement the functions involved in the first aspect, for example, determining or processing data involved in the above method. and information.
  • the chip system further includes a memory, and the memory is used to store necessary computer programs and data for the terminal device.
  • the chip system may be composed of chips, or may include chips and other discrete devices.
  • the present disclosure provides a chip system.
  • the chip system includes at least one processor and an interface for supporting the network side device to implement the functions involved in the second aspect, for example, determining or processing the functions involved in the above method. At least one of data and information.
  • the chip system further includes a memory, and the memory is used to store necessary computer programs and data for the network side device.
  • the chip system may be composed of chips, or may include chips and other discrete devices.
  • the present disclosure provides a computer program that, when run on a computer, causes the computer to execute the method described in the first aspect.
  • the present disclosure provides a computer program that, when run on a computer, causes the computer to perform the method described in the second aspect.
  • Figure 1 is a schematic architectural diagram of a communication system provided by an embodiment of the present disclosure
  • Figure 2 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 3 is a schematic flowchart of another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 4 is a schematic flowchart of yet another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 5 is a schematic flowchart of yet another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 6 is a schematic flowchart of yet another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 7 is a schematic flowchart of yet another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 8 is a schematic flowchart of yet another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure
  • Figure 9 is a schematic flowchart of yet another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure.
  • Figure 10 is a schematic structural diagram of a communication device provided by an embodiment of the present disclosure.
  • Figure 11 is a schematic structural diagram of another communication device provided by an embodiment of the present disclosure.
  • Figure 12 is a schematic structural diagram of a chip provided by an embodiment of the present disclosure.
  • FIG. 1 is a schematic architectural diagram of a communication system provided by an embodiment of the present disclosure.
  • the communication system may include but is not limited to one network side device and one terminal device.
  • the number and form of devices shown in Figure 1 are only for examples and do not constitute a limitation on the embodiments of the present disclosure. In actual applications, two or more devices may be included.
  • the communication system shown in Figure 1 includes a network side device 101 and a terminal device 102 as an example.
  • LTE long term evolution
  • 5th generation 5th generation
  • NR 5th generation new radio
  • side link sidelink
  • the side link in the embodiment of the present application may also be called a side link or a through link.
  • the network side device 101 in the embodiment of the present disclosure is an entity on the network side that is used to transmit or receive signals.
  • the network side device 101 can be an evolved base station (evolved NodeB, eNB), a transmission point (transmission reception point, TRP), a next generation base station (next generation NodeB, gNB) in an NR system, or other future mobile communication systems.
  • eNB evolved base station
  • TRP transmission reception point
  • gNB next generation base station
  • WiFi wireless fidelity
  • the embodiments of the present disclosure do not limit the specific technology and specific equipment form used by the network side equipment.
  • the network-side device may be composed of a centralized unit (central unit, CU) and a distributed unit (DU), where the CU may also be called a control unit (control unit), using CU-
  • the structure of DU can separate the protocol layers of network-side equipment, such as base stations, with some protocol layer functions placed under centralized control by the CU, while the remaining part or all protocol layer functions are distributed in the DU, and the CU centrally controls the DU.
  • the terminal device 102 in the embodiment of the present disclosure is an entity on the user side that is used to receive or transmit signals, such as a mobile phone.
  • Terminal equipment can also be called terminal equipment (terminal), user equipment (user equipment, UE), mobile station (mobile station, MS), mobile terminal equipment (mobile terminal, MT), etc.
  • the terminal device can be a car with communication functions, a smart car, a mobile phone, a wearable device, a tablet computer (Pad), a computer with wireless transceiver functions, a virtual reality (VR) terminal device, an augmented reality (augmented reality (AR) terminal equipment, wireless terminal equipment in industrial control, wireless terminal equipment in self-driving, wireless terminal equipment in remote medical surgery, smart grid ( Wireless terminal equipment in smart grid, wireless terminal equipment in transportation safety, wireless terminal equipment in smart city, wireless terminal equipment in smart home, etc.
  • the embodiments of the present disclosure do not limit the specific technology and specific equipment form used by the terminal equipment.
  • NR sidelink and LTE sidelink communication there are NR sidelink communication and LTE sidelink communication.
  • NR sidelink and LTE sidelink are incompatible with each other.
  • the NR sidelink receiver cannot send or receive LTE sidelink signals, and the LTE sidelink receiver cannot send or receive NR sidelink signals.
  • Both NR sidelink and LTE sidelink need to reduce interference through resource reservation and detection. If the two cannot obtain each other's resource reservation information, they will be unable to avoid selecting the same time-frequency resources, causing transmission resource collisions and reducing transmission reliability.
  • LTE sidelink is a first-mover technology, it is impossible to enhance LTE sidelink to support dynamic resource sharing.
  • This disclosure performs channel monitoring through LTE sidelink communication to obtain LTE sidelink resource reservation information, so that UEs communicating through NR sidelink can avoid the time-frequency resources required for LTE sidelink communication.
  • Figure 2 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure. The method is performed by a terminal device for sidelink communication of the second radio access technology. As shown in Figure 2, the method may include but is not limited to the following steps:
  • Step S201 Perform channel monitoring on the first wireless access technology sidelink communication.
  • the first wireless access technology is LTE wireless access technology
  • the second wireless access technology is NR wireless communication technology.
  • Step S202 According to the channel monitoring result of the first radio access technology side link communication, execute the process of the second radio access technology side link communication;
  • the above process includes at least one of the following processes: resource selection or resource reselection; sidelink physical channel transmission; re-evaluation of resources to be transmitted; re-evaluation of resources to be transmitted. Occupancy assessment (preemption); determining the auxiliary resource set information contained in the inter-UE coordination information.
  • the terminal device determines the specific implementation method of executing one or more processes of NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • the specific implementation manner of each process of NR sidelink communication performed by the terminal device can be implemented in any manner in the embodiments of the present disclosure, and the embodiments of the present disclosure do not limit this.
  • the terminal device can execute the process of the second wireless access technology sidelink communication based on the channel monitoring result of the first wireless access technology sidelink communication, thereby realizing the second wireless access technology.
  • Technology side link communication avoids the resource reservation of the first radio access technology side link communication, avoids transmission resource collision, and realizes the first radio access technology side link and the second radio access technology side
  • the uplink link dynamically shares transmission resources on the same carrier frequency to increase transmission resource usage efficiency.
  • performing channel monitoring on the first radio access technology sidelink communication includes at least one of the following: receiving a sidelink of the first radio access technology sidelink communication.
  • Link physical control channel PSCCH physical sidelinkcontrol channel
  • SCI sidelink control information
  • S-RSRP sidelink-reference signal receiving power
  • S-RSSI sidelink received signal strength indicator
  • the terminal device performs channel monitoring on the LTE sidelink communication to receive the sidelink physical control channel PSCCH of the LTE sidelink communication.
  • the terminal device performs channel monitoring on the LTE sidelink communication to determine the S-RSRP measurement value corresponding to the SCI in the PSCCH of the LTE sidelink communication.
  • the terminal device performs channel monitoring on the LTE sidelink communication to determine the S-RSSI measurement value corresponding to the SCI in the PSCCH of the LTE sidelink communication.
  • the terminal device performs channel monitoring on the LTE sidelink communication to receive the sidelink physical control channel PSCCH of the LTE sidelink communication, and determine the S-RSRP measurement corresponding to the SCI in the PSCCH of the LTE sidelink communication. value.
  • the terminal device performs channel monitoring on the LTE sidelink communication to receive the sidelink physical control channel PSCCH of the LTE sidelink communication, and determine the S-RSSI measurement corresponding to the SCI in the PSCCH of the LTE sidelink communication. value.
  • the terminal device performs channel monitoring on the LTE sidelink communication to receive the sidelink physical control channel PSCCH of the LTE sidelink communication, and determine the S-RSRP measurement corresponding to the SCI in the PSCCH of the LTE sidelink communication. values and S-RSSI measurements.
  • the resource pool for sidelink communication of the first radio access technology includes time and frequency resources for side-link communication of the first wireless technology; and the resource pool for side-link communication of the second wireless technology includes time-frequency resources for side-link communication of the second wireless technology. Time and frequency resources.
  • the time and frequency resources in the resource pool of LTE sidelink communication are different from those of NRsidelink communication.
  • the terminal device performs channel monitoring on the time and spectrum corresponding to the time and frequency resources included in the resource pool of LTE sidelink communication.
  • the process of the second radio access technology sidelink communication may be resource selection or resource reselection.
  • the terminal device can select or reselect resources for NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • FIG. 3 is a schematic flowchart of another method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure. The method is performed by a terminal device for sidelink communication of the second radio access technology. As shown in Figure 3, the method may include but is not limited to the following steps:
  • Step S301 Perform channel monitoring on the first wireless access technology sidelink communication.
  • step S301 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S302 When performing resource selection or resource reselection for the side link communication of the second radio access technology, based on the channel monitoring result of the side link communication of the first radio access technology, the side link of the second radio access technology is selected. Candidate resources are excluded from the set of candidate resources for link communication.
  • the terminal device may determine the SCI of the first radio access technology sidelink communication received during channel monitoring based on the channel monitoring result of the first radio access technology sidelink communication.
  • the time-frequency resources indicated or reserved in the SCI; candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are excluded from the set of candidate resources for sidelink communication of the second radio access technology.
  • the terminal device determines the time-frequency resources that need to be occupied indicated in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and excludes the time-frequency resources related to the above time-frequency resources from the candidate time-frequency resource set of the NR sidelink. Time-frequency resources with overlapping frequency resources.
  • the terminal device determines the time-frequency resources reserved for the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and excludes the time-frequency resources that overlap with the above-mentioned time-frequency resources from the candidate time-frequency resource set of the NR sidelink. Time and frequency resources.
  • the candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are excluded from the candidate resource set for the second radio access technology sidelink communication, including: determining the time-frequency resources associated with the SCI. S-RSRP and/or S-RSSI measurement values; excluding the first candidate resource from the set of candidate resources for sidelink communication of the second radio access technology, wherein the first candidate resource is the same as indicated or reserved in the SCI
  • Candidate resources have overlapping portions of time-frequency resources and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or equal to the first threshold.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSRP measurement associated with the SCI of the LTE sidelink communication. value, when the above-mentioned time-frequency resources overlap with the candidate resource set for NR sidelink communication, and the above-mentioned S-RSRP measurement value is greater than or equal to the first threshold, the overlap with the above-mentioned time-frequency resources is excluded from the candidate resource set for NR sidelink communication. time-frequency resources.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSSI associated with the SCI of the LTE sidelink communication.
  • Measurement value when the above-mentioned time-frequency resources overlap with the candidate resource set for NR sidelink communication, and the above-mentioned S-RSSI measurement value is greater than or equal to the first threshold, exclude the above-mentioned time-frequency resources from the candidate resource set for NR sidelink communication. Overlapping time-frequency resources.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSRP associated with the SCI of the LTE sidelink communication. Measurement value and S-RSSI measurement value, when the above time-frequency resources overlap with the candidate resource set for NR sidelink communication, and the above S-RSRP measurement value is greater than or equal to the first threshold, and the S-RSSI measurement value is greater than or equal to the first threshold When the threshold is reached, time-frequency resources that overlap with the above time-frequency resources are excluded from the candidate resource set for NR sidelink communication.
  • the first threshold and the priority of sidelink communication of the first radio access technology and the priority of sidelink communication of the second radio access technology indicated by the SCI are independently configured or preconfigured, wherein the second threshold is a threshold used when excluding candidate resources based on a channel monitoring result of the second radio access technology sidelink communication.
  • the specific implementation method of excluding candidate resources according to the channel monitoring result of NR sidelink communication is the same as that in the embodiment of the present disclosure, the candidate resource set of NR sidelink communication is based on the channel monitoring result of LTE sidelink communication.
  • the implementation method of excluding candidate resources is the same, and this disclosure does not limit this and will not be described again.
  • the first threshold is set according to the channel status information of the channel.
  • the first threshold needs to ensure that signals with power greater than or equal to the first threshold can normally use the channel for communication, and the first threshold needs to be less than NR sidelink communication according to
  • the second threshold used when excluding candidate resources based on the channel monitoring results, thereby ensuring that the priority of LTE sidelink communication is greater than or equal to NR sidelink communication.
  • the first threshold needs to ensure that signals with power greater than or equal to the first threshold can normally use the channel for communication, and the first threshold needs to be smaller than what is required when excluding candidate resources based on the channel monitoring results of NR sidelink communication.
  • the first threshold and the second threshold can be independently configured or pre-configured according to the channel state information of the channel and the above relationship.
  • the first threshold and the second threshold may be independently configured or pre-configured according to actual conditions.
  • the first threshold is configured to be smaller than the second threshold, so that when the terminal device communicates using the same channel, the difficulty of using the NR sidelink communication method is higher than that of using the LTE sidelink communication, thereby ensuring that the same channel is used for communication.
  • LTEsidelink communication has a higher priority than NRsidelink communication.
  • the terminal device can exclude candidate resources from the candidate resource set of NR sidelink communication based on the channel monitoring results of LTE sidelink communication, thereby realizing avoidance of LTE sidelink communication by NR sidelink communication and avoiding transmission resource collision. , realize the dynamic sharing of transmission resources on the same carrier frequency by LTE sidelink and NR sidelink, and increase the efficiency of transmission resource usage.
  • the process of NR sidelink communication may be sidelink physical channel transmission.
  • the terminal device can determine whether to send the sidelink physical channel of NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • Figure 4 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure. The method is performed by a terminal device for sidelink communication of the second radio access technology. As shown in Figure 4, the method may include but is not limited to the following steps:
  • Step S401 Perform channel monitoring on the first wireless access technology sidelink communication.
  • step S401 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S402 When transmitting the sidelink physical channel of the second wireless access technology sidelink communication, determine whether to send the second wireless access technology based on the channel monitoring result of the first wireless access technology sidelink communication.
  • the terminal device may determine the SCI of the first radio access technology sidelink communication received during channel monitoring based on the channel monitoring result of the first radio access technology sidelink communication.
  • the time-frequency resources indicated or reserved in the SCI cancel the transmission of the sidelink physical channel of the second wireless access technology sidelink communication, where the time-frequency resources indicated or reserved in the SCI are not related to the second wireless access technology sidelink physical channel
  • the terminal device determines the time-frequency resources that need to be occupied indicated in the received LTE sidelink communication SCI based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources are consistent with the to-be-sent sidelink channel of the NR sidelink
  • the time-frequency resources used have resource overlap, the transmission of the sidelink channel for the NR sidelink communication is cancelled.
  • the terminal device determines the time-frequency resources that need to be reserved for the received LTE sidelink communication based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources are consistent with the time-frequency resources used by the to-be-sent sidelink channel of the NR sidelink.
  • transmission is performed on the sidelink channel of the NR sidelink communication.
  • the terminal device determines whether to send the sidelink physical channel of the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication, further including: determining and The S-RSRP and/or S-RSSI measurement values associated with the SCI; where the time-frequency resources indicated or reserved in the SCI correspond to the physical channel of the sidelink to be sent for sidelink communication of the second radio access technology.
  • the S-RSRP and/or S-RSSI measurement value associated with the SCI is greater than or equal to the third threshold, cancel the sidelink of the second radio access technology sidelink communication Transmission of the physical channel; or, there is no resource overlap between the time-frequency resources indicated or reserved in the SCI and the time-frequency resources used by the side-link physical channel to be sent for the second radio access technology side-link communication, and /Or, the S-RSRP and/or S-RSSI measurement value associated with the SCI is less than the third threshold, and the sidelink physical channel of the second radio access technology sidelink communication is sent.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSRP measurement associated with the SCI of the LTE sidelink communication. value, when the above time-frequency resources overlap with the time-frequency resources used by the sidelink channel of the NR sidelink to be sent, and the above-mentioned S-RSRP measurement value is greater than or equal to the preset third threshold, cancel the communication in the NR sidelink Transmission of sidelink channel.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSSI associated with the SCI of the LTE sidelink communication. Measurement value, when the above time-frequency resource overlaps with the time-frequency resource used by the sidelink channel to be sent by the NR sidelink, and the above-mentioned S-RSSI measurement value is greater than or equal to the preset third threshold, cancel the communication in the NR sidelink The sidelink channel is sent.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSRP associated with the SCI of the LTE sidelink communication.
  • Measurement value and S-RSSI measurement value when the above-mentioned time-frequency resources overlap with the time-frequency resources used by the sidelink channel of the NR sidelink to be transmitted, and the above-mentioned S-RSRP measurement value is greater than or equal to the preset third threshold, the above-mentioned When the S-RSSI measurement value is greater than or equal to the preset third threshold, the transmission of the sidelink channel of the NR sidelink communication is cancelled.
  • the terminal device determines the time-frequency resource indicated or reserved in the received LTE sidelink communication SCI based on the channel monitoring result of the LTE sidelink communication.
  • the time-frequency resource is consistent with the to-be-sent sidelink channel of the NR sidelink
  • transmission is performed on the sidelink channel of the NR sidelink communication.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSRP associated with the SCI of the LTE sidelink communication. Measurement value, when the above time-frequency resource overlaps with the time-frequency resource used by the sidelink channel to be sent by the NR sidelink, but the above-mentioned S-RSRP measurement value is less than the preset third threshold, the sidelink communication in the NR sidelink channel transmission.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSSI associated with the SCI of the LTE sidelink communication. Measurement value, when the above time-frequency resource overlaps with the time-frequency resource used by the sidelink channel to be sent by the NR sidelink, but the above-mentioned S-RSSI measurement value is less than the preset third threshold, the sidelink communication in the NR sidelink channel transmission.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication based on the monitoring results of the LTE sidelink communication channel, and determines the S-RSRP associated with the SCI of the LTE sidelink communication.
  • the measurement value and the S-RSSI measurement value when the above time-frequency resources overlap with the time-frequency resources used by the sidelink channel of the NR sidelink to be transmitted, but the above-mentioned S-RSSI measurement value is less than the preset third threshold, and the above-mentioned S -When the RSRP measurement value is less than the preset third threshold, transmission is performed on the sidelink channel of the NR sidelink communication.
  • the third threshold is related to the priority of sidelink communication of the first radio access technology and the priority of sidelink physical channel transmission of the second radio access technology indicated by the SCI. level, there is a mapping relationship.
  • a third threshold can be set according to the channel state information of the channel.
  • the third threshold needs to ensure that signals with power greater than or equal to the third threshold can normally use the channel for communication, and the third threshold needs to ensure that LTE sidelink communication
  • the priority is higher than NR sidelink communication (for example: on the basis of ensuring normal communication, the third threshold can be set as small as possible to maximize the signal power when the terminal device uses LTE sidelink to communicate is greater than or equal to the third threshold probability).
  • the terminal device can determine whether to send the sidelink physical channel of the NR sidelink communication based on the channel monitoring result of the LTE sidelink communication, thereby realizing the avoidance of the LTE sidelink communication by the NR sidelink communication and avoiding the transmission resources. Collision enables LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, increasing the efficiency of transmission resource usage.
  • the process of NR sidelink communication may be re-evaluation and/or occupancy evaluation of resources to be transmitted.
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • FIG. 5 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure. The method is performed by a terminal device for sidelink communication of the second radio access technology. As shown in Figure 5, the method may include but is not limited to the following steps:
  • Step S501 Perform channel monitoring on the first wireless access technology sidelink communication.
  • step S501 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S502 When performing re-evaluation and/or occupancy assessment of resources to be transmitted in the sidelink communication of the second radio access technology, determine whether to perform the second radio access technology sidelink communication based on the channel monitoring results of the sidelink communication in the first radio access technology. 2. Resource reselection for sidelink communication of wireless access technology.
  • the terminal device when the terminal device re-evaluates the resources to be transmitted for NR sidelink communication, it can determine whether to re-select the resources for NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • the terminal device when the terminal device evaluates the occupancy of resources to be transmitted for NR sidelink communication, it can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • the terminal device when the terminal device performs re-evaluation and occupancy evaluation of resources to be transmitted for NR sidelink communication, it can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication.
  • the terminal device determines whether to perform resource reselection for the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication, including the following: Step: Determine the time-frequency resources indicated or reserved in the SCI of the first radio access technology side link communication received during channel monitoring based on the channel monitoring results of the first radio access technology side link communication; Use the physical sidelink control channel PSCCH/physical sidelink shared channel PSSCH of the second radio access technology sidelink communication to be transmitted to perform resource reselection, where the time indicated or reserved in the SCI There is resource overlap between the frequency resources and the resources to be transmitted; or, the resources to be transmitted are used for sidelink transmission of the second wireless access technology, where the time-frequency resources indicated or reserved in the SCI do not overlap with the resources to be transmitted. .
  • the terminal device determines the time-frequency resource indicated in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication.
  • Resource reselection is performed on the PSCCH/PSSCH of NR sidelink communication sent using the resources to be transmitted.
  • the terminal device determines the time-frequency resources reserved for the LTE sidelink communication received in the channel monitoring based on the channel monitoring results of the LTE sidelink communication. When the time-frequency resources overlap with the resources to be transmitted, the terminal device determines the time-frequency resources reserved for the LTE sidelink communication. Use the PSCCH/PSSCH of the NR sidelink communication sent by the resources to be transmitted for resource reselection.
  • the terminal device determines the time-frequency resource indicated in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication. There is no resource overlap between the time-frequency resource and the resource to be transmitted. When, use the resources to be transmitted for NR sidelink transmission.
  • the terminal device determines the time-frequency resources reserved for LTE sidelink communication received in the channel monitoring based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources do not overlap with the resources to be transmitted, Use the resources to be transmitted for NR sidelink transmission.
  • determining whether to perform resource reselection for the second radio access technology sidelink communication according to the channel monitoring result of the first radio access technology sidelink communication further includes: determining the S associated with the SCI - RSRP and/or S-RSSI measurement values; wherein, the time-frequency resources indicated or reserved in the SCI overlap with the resources to be transmitted, and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or Equal to the fourth threshold, perform resource reselection on the PSCCH/PSSCH of the second radio access technology sidelink communication transmitted using the resources to be transmitted; or, the time-frequency resources indicated or reserved in the SCI and the resources to be transmitted do not exist
  • the resources overlap, and/or the S-RSRP and/or S-RSSI measurement value associated with the SCI is less than the fourth threshold, and the resources to be transmitted are used for sidelink transmission of the second radio access technology.
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the S- associated with the SCI of the LTE sidelink communication.
  • RSRP measurement value when there is resource overlap between the above-mentioned time-frequency resources and the resources to be transmitted, and the above-mentioned S-RSRP measurement value is greater than or equal to the fourth threshold, resource reselection is performed on the PSCCH/PSSCH of NR sidelink communication sent using the resources to be transmitted. .
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the S associated with the SCI of the LTE sidelink communication.
  • -RSSI measurement value when there is resource overlap between the above-mentioned time-frequency resources and the resources to be transmitted, and the above-mentioned S-RSSI measurement value is greater than or equal to the fourth threshold, perform resource re-relocation on the PSCCH/PSSCH of NR sidelink communication sent using the resources to be transmitted. select.
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the S associated with the SCI of the LTE sidelink communication.
  • -RSRP measurement value and S-RSSI measurement value when there is resource overlap between the above-mentioned time-frequency resources and the resources to be transmitted, and the above-mentioned S-RSRP measurement value is greater than or equal to the fourth threshold, and the above-mentioned S-RSSI measurement value is greater than or equal to the fourth threshold
  • resource reselection is performed on the PSCCH/PSSCH of NR sidelink communication sent using the resources to be transmitted.
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources do not overlap with the resources to be transmitted, , use the resources to be transmitted for NR sidelink transmission.
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the S associated with the SCI of the LTE sidelink communication.
  • -RSRP measurement value when there is resource overlap between the above-mentioned time-frequency resources and the resources to be transmitted, and the above-mentioned S-RSRP measurement value is less than the fourth threshold, use the resources to be transmitted for NR sidelink transmission.
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the S associated with the SCI of the LTE sidelink communication.
  • -RSSI measurement value when there is resource overlap between the above-mentioned time-frequency resources and the resources to be transmitted, and the above-mentioned S-RSSI measurement value is less than the fourth threshold, use the resources to be transmitted for NR sidelink transmission.
  • the terminal device determines the LTE sidelink communication indication or reserved time-frequency resources received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the S associated with the SCI of the LTE sidelink communication.
  • -RSRP measurement value and S-RSSI measurement value used when the above time-frequency resources and the resources to be transmitted overlap, and the above S-RSSI measurement value is less than the fourth threshold, and the above S-RSRP measurement value is less than the fourth threshold
  • the resources to be transmitted are sent via NR sidelink.
  • mapping relationship between the fourth threshold and the priority of the first radio access technology sidelink communication indicated by the SCI and the priority of PSCCH/PSSCH transmission of the second radio access technology sidelink communication is a mapping relationship between the fourth threshold and the priority of the first radio access technology sidelink communication indicated by the SCI and the priority of PSCCH/PSSCH transmission of the second radio access technology sidelink communication.
  • a fourth threshold can be set according to the channel state information of the channel.
  • the fourth threshold needs to ensure that signals with power greater than or equal to the fourth threshold can normally use the channel for communication, and the fourth threshold needs to ensure that LTE sidelink communication
  • the priority is higher than the priority of NRsidelink's PSCCH/PSSCH transmission (for example: on the basis of ensuring normal communication, the fourth threshold can be set as small as possible to improve the signal when the terminal device uses LTE sidelink to communicate as much as possible The probability that the power is greater than or equal to the fourth threshold).
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication, thereby realizing avoidance of NR sidelink communication to LTE sidelink communication, avoiding transmission resource collision, and realizing LTE sidelink and NR sidelink dynamically share transmission resources on the same carrier frequency to increase transmission resource usage efficiency.
  • the process of NR sidelink communication may be to determine the auxiliary resource set information contained in the inter-user assistance information.
  • the terminal device can determine the auxiliary resource set information based on the channel monitoring results of LTE sidelink communication when performing collaboration between terminal devices UE.
  • FIG. 6 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies according to an embodiment of the present disclosure. The method is performed by a terminal device for sidelink communication of the second radio access technology. As shown in Figure 6, the method may include but is not limited to the following steps:
  • Step S601 Perform channel monitoring on the first wireless access technology sidelink communication.
  • step S601 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S602 When performing cooperation between terminal devices UE, determine the auxiliary resource set information included in the inter-user assistance information according to the channel monitoring result of the first radio access technology sidelink communication.
  • a terminal device that implements the method of the embodiment of the present disclosure can cooperate with other terminal devices to monitor the channel of LTE sidelink communication, thereby determining auxiliary resource set information based on the shared information between terminal devices.
  • the auxiliary resource set information includes at least one of the following: a recommended resource set, a non-recommended resource set; the recommended resource set refers to a set of time-frequency resources that each terminal device that collaborates tends to use. , the recommended resource set refers to the set of time-frequency resources that each collaborating terminal device is not inclined to use.
  • the terminal device can determine the auxiliary resource set information contained in the inter-user assistance information based on the channel monitoring results of the LTE sidelink communication, so that the terminal device can implement NR sidelink communication for LTE based on the auxiliary resource set information.
  • Sidelink communication avoidance avoids transmission resource collisions, enables LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, and increases transmission resource usage efficiency.
  • FIG. 7 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure.
  • the method is performed by a terminal device for sidelink communication of the second radio access technology.
  • the method may include but is not limited to the following steps:
  • Step S701 Perform channel monitoring on the first wireless access technology sidelink communication.
  • step S701 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S702 When performing collaboration between terminal devices UE, determine the auxiliary resource set information included in the inter-user assistance information according to the channel monitoring result of the first radio access technology sidelink communication.
  • step S702 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S703 Exclude candidate resources from the candidate resource set of the second radio access technology sidelink communication based on the channel monitoring results of the first radio access technology sidelink communication.
  • the terminal device excludes candidate resources from the candidate resource set of the second radio access technology sidelink communication based on the channel monitoring results of the first radio access technology sidelink communication
  • the method may include the following steps: determining, according to the channel monitoring result of the first radio access technology sidelink communication, the time frequency indicated or reserved in the SCI of the first radio access technology sidelink communication received in the channel monitoring.
  • Resources Exclude candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI from the set of candidate resources for the second radio access technology sidelink communication.
  • the terminal device determines the time-frequency resources that need to be occupied indicated in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources are the candidate resources for the NR sidelink communication
  • the sets overlap the overlapping time-frequency resources are excluded from the candidate resource set for NR sidelink communication.
  • the terminal device determines the time-frequency resources that need to be reserved for the LTE sidelink communication received in the channel monitoring based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources exist with the candidate resource set for NR sidelink communication, When they overlap, the time-frequency resources of the overlapped part are excluded from the candidate resource set for NR sidelink communication.
  • the candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are excluded from the candidate resource set for the second radio access technology sidelink communication, including: determining the time-frequency resources associated with the SCI. S-RSRP and/or S-RSSI measurement values; excluding the second candidate resource from the set of candidate resources for sidelink communication of the second radio access technology, where the second candidate resource is the same as indicated or reserved in the SCI
  • Candidate resources have overlapping portions of time-frequency resources and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or equal to the fifth threshold.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the time-frequency resources associated with the SCI of the LTE sidelink communication.
  • the S-RSRP measurement value when the above-mentioned time-frequency resources overlap with the candidate resource set for NR sidelink communication, and the above-mentioned S-RSRP measurement value is greater than or equal to the fifth threshold, the overlapping part of the time-frequency resources is removed from the candidate resource set for NR sidelink communication. Excluded from resource collection.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the time-frequency resources associated with the SCI of the LTE sidelink communication.
  • the S-RSSI measurement value when the above-mentioned time-frequency resources overlap with the candidate resource set for NR sidelink communication, and the above-mentioned S-RSSI measurement value is greater than or equal to the fifth threshold, the overlapping part of the time-frequency resources will be removed from the NR sidelink communication. Excluded from the candidate resource set.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the time-frequency resources associated with the SCI of the LTE sidelink communication.
  • the S-RSRP measurement value and the S-RSSI measurement value overlap when the above-mentioned time-frequency resources overlap with the candidate resource set for NR sidelink communication, and the above-mentioned S-RSSI measurement value is greater than or equal to the fifth threshold, and the above-mentioned S-RSRP measurement When the value is greater than or equal to the fifth threshold, the overlapping time-frequency resources are excluded from the candidate resource set for NR sidelink communication.
  • the fifth threshold and the sixth threshold are independently configured or pre-configured, wherein the sixth threshold is a threshold used when excluding candidate resources based on the channel monitoring result of the second radio access technology sidelink communication.
  • the specific implementation method of excluding candidate resources according to the channel monitoring result of NR sidelink communication is different from that in the embodiment of the present disclosure, based on the channel monitoring result of LTE sidelink communication, the candidate resources of NR sidelink communication are eliminated Exclusion of candidate resources from the collection is implemented in the same manner, which is not limited in this disclosure and will not be described again.
  • the fifth threshold is set according to the channel state information of the channel.
  • the fifth threshold needs to ensure that signals with power greater than or equal to the fifth threshold can normally use the channel for communication, and the fifth threshold needs to be less than NR sidelink communication according to
  • the sixth threshold used when excluding candidate resources based on the channel monitoring results, thereby ensuring that the priority of LTE sidelink communication is greater than or equal to NR sidelink communication.
  • the fifth threshold needs to ensure that signals with power greater than or equal to the fifth threshold can normally use the channel for communication, and the fifth threshold needs to be smaller than what is required when excluding candidate resources based on the channel monitoring results of NR sidelink communication.
  • the fifth threshold and the sixth threshold can be independently configured or pre-configured according to the channel state information of the channel and the above relationship.
  • the fifth threshold and the sixth threshold may be independently configured or pre-configured according to actual conditions.
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication, and exclude candidate resources from the candidate resource set, thereby realizing NR sidelink communication for LTE sidelink Communication avoidance avoids transmission resource collisions, enables LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, and increases transmission resource usage efficiency.
  • FIG. 8 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure.
  • the method is performed by a terminal device for sidelink communication of the second radio access technology.
  • the method may include but is not limited to the following steps:
  • Step S801 Perform channel monitoring on the first wireless access technology sidelink communication.
  • step S801 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S802 When performing cooperation between terminal devices UE, determine the auxiliary resource set information contained in the inter-user assistance information according to the channel monitoring result of the first radio access technology sidelink communication.
  • step S802 can be implemented in any manner in the embodiments of the present disclosure.
  • the embodiments of the present disclosure do not limit this and will not be described again.
  • Step S803 Determine the resources in the unrecommended resource set from the candidate resource set for the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication.
  • the terminal device determines the unrecommended resources from the candidate resource set of the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication.
  • the resources in the resource set include the following steps: according to the channel monitoring results of the first radio access technology side link communication, determine the SCI indication of the first radio access technology side link communication received in the channel monitoring or Reserved time-frequency resources; determine the third candidate resource in the candidate resource set for sidelink communication of the second radio access technology as a resource in the unrecommended resource set, where the third candidate resource is related to SCI There are candidate resources that overlap with the time-frequency resources indicated or reserved in .
  • the terminal device determines the time-frequency resource indicated in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication.
  • the time-frequency resource overlaps with the candidate resource set of the NR sidelink.
  • the overlapping time-frequency resources are determined as resources in the deprecated resource set.
  • the terminal device determines the time-frequency resources reserved for the LTE sidelink communication received in the channel monitoring based on the channel monitoring results of the LTE sidelink communication.
  • the time-frequency resources overlap with the candidate resource set of the NR sidelink , determine the overlapping time-frequency resources as resources in the unrecommended resource set.
  • determining the third candidate resource in the candidate resource set for the second radio access technology sidelink communication as a resource in the unrecommended resource set includes: determining the S-RSRP associated with the SCI and /or S-RSSI measurement value; determine the fourth candidate resource in the candidate resource set of the second radio access technology sidelink communication as a resource in the unrecommended resource set, where the fourth candidate resource is the same as Candidate resources where the time-frequency resources indicated or reserved in the SCI have overlapping portions, and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or equal to the seventh threshold.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the time-frequency resources associated with the SCI of the LTE sidelink communication.
  • the S-RSRP measurement value of the above-mentioned time-frequency resource overlaps with the candidate resource set for NR sidelink communication, and the above-mentioned S-RSRP measurement value is greater than or equal to the seventh threshold, the overlapping time-frequency resource is determined to be not recommended Resources in resource collections.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the time-frequency resources related to the SCI of the LTE sidelink communication.
  • the overlapping time-frequency resources are determined to be not recommended. resources in the resource collection.
  • the terminal device determines the time-frequency resources indicated or reserved in the SCI of the LTE sidelink communication received in the channel monitoring based on the channel monitoring result of the LTE sidelink communication, and determines the time-frequency resources related to the SCI of the LTE sidelink communication.
  • the associated S-RSRP measurement value and S-RSSI there is overlap between the above time-frequency resources and the candidate resource set for NR sidelink communication, and the above S-RSRP measurement value is greater than or equal to the seventh threshold, and the above S-RSRP measurement value When it is greater than or equal to the seventh threshold, the overlapping time-frequency resources are determined to be resources in the unrecommended resource set.
  • the seventh threshold and the eighth threshold are independently configured or pre-configured, wherein the eighth threshold is when resources in the resource set that are not recommended are determined based on the channel monitoring results of the second radio access technology sidelink communication.
  • the specific implementation method of determining the resources in the unrecommended resource set is different from the channel monitoring result of LTE sidelink communication in the embodiment of the present disclosure, from NR
  • the resources in the resource set that are determined not to be recommended in the candidate resource set for sidelink communication are implemented in the same manner. This disclosure does not limit this and will not be described again.
  • the seventh threshold is set according to the channel status information of the channel.
  • the seventh threshold needs to ensure that signals with power greater than or equal to the seventh threshold can normally use the channel for communication, and the seventh threshold needs to be less than NR sidelink communication according to
  • the eighth threshold used when excluding candidate resources based on channel monitoring results, thereby ensuring that the priority of LTE sidelink communication is greater than or equal to NR sidelink communication.
  • the seventh threshold needs to ensure that signals with power greater than or equal to the seventh threshold can normally use the channel for communication, and the seventh threshold needs to be smaller than what is required when excluding candidate resources based on the channel monitoring results of NR sidelink communication.
  • the seventh threshold and the eighth threshold can be independently configured or pre-configured according to the channel state information of the channel and the above relationship.
  • the seventh threshold and the eighth threshold may be independently configured or pre-configured according to actual conditions.
  • the seventh threshold needs to be smaller than the third threshold used when excluding candidate resources based on the channel monitoring results of NR sidelink communication.
  • Eight thresholds In some implementations of this application, the priority of NR sidelink communication can also be configured to be greater than or equal to the priority of LTE sidelink communication according to the actual situation. In this implementation, the seventh threshold needs to be greater than or equal to the priority of NR sidelink communication. The eighth threshold used when excluding candidate resources based on channel monitoring results.
  • the terminal device can determine whether to perform resource reselection for NR sidelink communication based on the channel monitoring results of LTE sidelink communication, and determine the resources in the non-recommended resource set in the candidate resource set, thereby achieving NR sidelink communication avoids LTE sidelink communication, avoiding transmission resource collisions, enabling LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, and increasing transmission resource usage efficiency.
  • the method provided by the embodiments of the present disclosure is introduced from the perspective of a terminal device.
  • the following will further introduce the multi-radio access technology sidelink communication coexistence provided by the embodiments of the present disclosure from the perspective of network side equipment.
  • Figure 9 is a schematic flowchart of a method for determining sidelink communication coexistence of multiple radio access technologies provided by an embodiment of the present disclosure. The method is performed by a terminal device for sidelink communication of the second radio access technology. As shown in Figure 9, the method may include but is not limited to the following steps:
  • Step S901 Send configuration information to the terminal device.
  • the terminal device is a terminal device that uses the second wireless access technology sidelink communication
  • the configuration information includes a threshold configured for the terminal device, and the threshold is used by the terminal device according to the first wireless access technology.
  • the channel monitoring result of the incoming radio access technology side link communication is a threshold used to perform the process of the second radio access technology side link communication.
  • the above process includes at least one of the following processes: resource selection or resource reselection; sidelink physical channel transmission; re-evaluation of resources to be transmitted; occupancy assessment of resources to be transmitted; determination of auxiliary resources included in inter-user assistance information Collection information.
  • the network side device can send configuration information to the terminal device, so that the terminal device can perform the second wireless access technology based on the configuration information and the channel monitoring result of the first wireless access technology sidelink communication.
  • the process of access technology side link communication thereby realizing that the second wireless access technology side link communication avoids the resource reservation of the first wireless access technology side link communication, avoiding transmission resource collision, and realizing
  • the first radio access technology side link and the second radio access technology side link dynamically share transmission resources on the same carrier frequency, thereby increasing transmission resource usage efficiency.
  • the methods provided by the embodiments of the present disclosure are introduced from the perspectives of terminal equipment and network side equipment respectively.
  • the network side device and the terminal device may include a hardware structure and a software module to implement the above functions in the form of a hardware structure, a software module, or a hardware structure plus a software module.
  • a certain function among the above functions can be executed by a hardware structure, a software module, or a hardware structure plus a software module.
  • FIG. 10 is a schematic structural diagram of a communication device 1000 provided by an embodiment of the present disclosure.
  • the communication device 1000 shown in diagram 1000 may include a transceiver module 1001 and a processing module 1002.
  • the transceiving module 1001 may include a sending module and/or a receiving module.
  • the sending module is used to implement the sending function
  • the receiving module is used to implement the receiving function.
  • the transceiving module 1401 may implement the sending function and/or the receiving function.
  • the communication device 1000 may be a terminal device, a device in the terminal device, or a device that can be used in conjunction with the terminal device.
  • the communication device 1000 may be a network-side device, a device in a network-side device, or a device that can be used in conjunction with the network-side device.
  • the communication device 1000 is a terminal device: a transceiver module 1001, used for channel monitoring of the first wireless access technology side link communication; a processing module 1002, used for channel monitoring of the first wireless access technology side link communication
  • the process of sidelink communication of the second radio access technology is executed; wherein the process includes at least one of the following processes: resource selection or resource reselection; sidelink physical channel transmission; re-evaluation of resources to be transmitted; Evaluate the occupancy of transmission resources; determine the auxiliary resource set information contained in the inter-user assistance information.
  • the first wireless access technology is LTE wireless access technology
  • the second wireless access technology is NR wireless communication technology.
  • the transceiver module 1001 is specifically configured to: receive the sidelink physical control channel PSCCH of the first radio access technology sidelink communication; determine the PSCCH of the first radio access technology sidelink communication.
  • the transceiver module 1001 is specifically configured to: perform channel monitoring in the resource pool of the first wireless access technology sidelink communication; wherein, the resource pool of the first wireless access technology sidelink communication There is an overlap of time and frequency resources with the resource pool for side link communication of the second radio access technology; the resource pool for side link communication of the first radio access technology includes time and frequency resources for side link communication of the first radio access technology; The resource pool for sidelink communication of the second wireless technology includes time and frequency resources for sidelink communication of the second wireless technology.
  • the processing module 1002 is specifically configured to: when performing resource selection or resource reselection for sidelink communication of the second radio access technology, monitor the channel for sidelink communication of the first radio access technology. As a result, the candidate resources are excluded from the set of candidate resources for the second radio access technology sidelink communication.
  • the processing module 1002 is specifically configured to: determine the first radio access technology side link received in the channel monitoring according to the channel monitoring result of the first radio access technology side link communication.
  • the time-frequency resources indicated or reserved in the SCI of the second wireless access technology side link communication; the candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are selected from the candidate resource set of the second radio access technology side link communication. exclude.
  • the processing module 1002 is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; and exclude the first candidate from the candidate resource set for the second radio access technology sidelink communication.
  • the first threshold and the priority of sidelink communication of the first radio access technology and the priority of sidelink communication of the second radio access technology indicated by the SCI are independently configured or preconfigured, wherein the second threshold is a threshold used when excluding candidate resources based on a channel monitoring result of the second radio access technology sidelink communication.
  • the processing module 1002 is specifically configured to: when transmitting the sidelink physical channel of the second radio access technology sidelink communication, according to the channel of the first radio access technology sidelink communication Monitoring results determine whether to send the sidelink physical channel of the second radio access technology sidelink communication.
  • the processing module 1002 is specifically configured to: determine the first radio access technology side link received in the channel monitoring according to the channel monitoring result of the first radio access technology side link communication. time-frequency resources indicated or reserved in the SCI of the second wireless access technology sidelink communication; canceling the transmission of the sidelink physical channel of the second wireless access technology sidelink communication, where the time-frequency resources indicated or reserved in the SCI are consistent with the first The time-frequency resources used by the sidelink physical channel to be sent for the sidelink communication of the two radio access technologies overlap; or, the physical sidelink channel for the sidelink communication of the second radio access technology is sent. , where there is no resource overlap between the time-frequency resources indicated or reserved in the SCI and the time-frequency resources used by the physical channel of the sidelink to be sent for sidelink communication of the second radio access technology.
  • the processing module 1002 is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; wherein the time-frequency resources indicated or reserved in the SCI are related to the second radio access technology side link.
  • the time-frequency resources used by the physical channel of the sidelink to be sent in link communication have resource overlap, and the S-RSRP and/or S-RSSI measurement values associated with the SCI are greater than or equal to the third threshold, cancel the second wireless The transmission of the sidelink physical channel of the access technology sidelink communication; or the time-frequency resources indicated or reserved in the SCI and the to-be-sent sidelink physical channel of the second radio access technology sidelink communication.
  • There is no resource overlap in the time-frequency resources used by the channel, and/or the S-RSRP and/or S-RSSI measurement value associated with the SCI is less than the third threshold, sending the second radio access technology sidelink communication Sidelink physical channel.
  • the processing module 1002 is specifically configured to: when performing re-evaluation and/or occupancy assessment of resources to be transmitted for sidelink communication of the second radio access technology, based on the first radio access technology sidelink communication The channel monitoring result of the channel communication is used to determine whether to perform resource reselection for the second radio access technology side link communication.
  • the processing module 1002 is specifically configured to: determine the first radio access technology side link received in the channel monitoring according to the channel monitoring result of the first radio access technology side link communication.
  • the time-frequency resources indicated or reserved in the SCI of the channel communication; the physical sidelink control channel PSCCH/physical sidelink shared channel PSSCH for the second radio access technology sidelink communication sent using the resources to be transmitted Perform resource reselection, where the time-frequency resources indicated or reserved in the SCI overlap with the resources to be transmitted; or use the resources to be transmitted for sidelink transmission of the second radio access technology, where the resources indicated in the SCI Or there is no resource overlap between the reserved time-frequency resources and the resources to be transmitted.
  • the processing module 1002 is specifically configured to: determine the S-RSRP and/or S-RSSI measurement values associated with the SCI; wherein the time-frequency resources indicated or reserved in the SCI overlap with the resources to be transmitted, and The S-RSRP and/or S-RSSI measurement value associated with the SCI is greater than or equal to the fourth threshold, and resource reselection is performed on the PSCCH/PSSCH of the second radio access technology sidelink communication sent using the resources to be transmitted; Or, the time-frequency resources indicated or reserved in the SCI do not overlap with the resources to be transmitted, and/or the S-RSRP and/or S-RSSI measurement values associated with the SCI are less than the fourth threshold, the resources to be transmitted are used Sidelink transmission of the second radio access technology is performed.
  • mapping relationship between the fourth threshold and the priority of the first radio access technology sidelink communication indicated by the SCI and the priority of PSCCH/PSSCH transmission of the second radio access technology sidelink communication is a mapping relationship between the fourth threshold and the priority of the first radio access technology sidelink communication indicated by the SCI and the priority of PSCCH/PSSCH transmission of the second radio access technology sidelink communication.
  • the processing module 1002 is specifically configured to: when performing collaboration between terminal devices UE, determine the auxiliary resources included in the inter-user assistance information based on the channel monitoring results of the first radio access technology sidelink communication. Collection information.
  • the processing module 1002 is also configured to: based on the channel monitoring results of the first radio access technology sidelink communication, create a candidate resource set for the second radio access technology sidelink communication. Exclude candidate resources from .
  • the processing module 1002 is specifically configured to: determine the SCI indication of the first radio access technology sidelink communication received during channel monitoring according to the channel monitoring result of the first radio access technology sidelink communication. or reserved time-frequency resources; candidate resources that overlap with the time-frequency resources indicated or reserved in the SCI are excluded from the set of candidate resources for sidelink communication of the second radio access technology.
  • the processing module 1002 is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; and exclude the second candidate from the candidate resource set for the second radio access technology sidelink communication. resources, wherein the second candidate resource is a candidate resource that overlaps with the time-frequency resource indicated or reserved in the SCI, and the S-RSRP and/or S-RSSI measurement value associated with the SCI is greater than or equal to the fifth threshold .
  • the fifth threshold and the sixth threshold are independently configured or pre-configured, wherein the sixth threshold is a threshold used when excluding candidate resources based on the channel monitoring result of the second radio access technology sidelink communication.
  • the auxiliary resource set information is a resource set that is not recommended
  • the processing module 1002 is further configured to: according to the channel monitoring result of the sidelink communication of the first radio access technology, obtain the information from the second radio access technology based on the channel monitoring result of the sidelink communication of the first radio access technology. Resources in the set of resources that are not recommended are determined from the set of candidate resources for technical sidelink communication.
  • the processing module 1002 is specifically configured to: determine the SCI indication of the first radio access technology sidelink communication received during channel monitoring according to the channel monitoring result of the first radio access technology sidelink communication. or reserved time-frequency resources; determine the third candidate resource in the candidate resource set for sidelink communication of the second radio access technology as a resource in the unrecommended resource set, where the third candidate resource is the same as There are overlapping candidate resources for the time-frequency resources indicated or reserved in the SCI.
  • the processing module 1002 is specifically configured to: determine the S-RSRP and/or S-RSSI measurement value associated with the SCI; and use the fourth candidate in the set of candidate resources for sidelink communication of the second radio access technology Resources are determined to be resources in the resource set that are not recommended, where the fourth candidate resource is the S-RSRP and/or S-RSSI that overlaps with the time-frequency resources indicated or reserved in the SCI and is associated with the SCI Candidate resources with measured values greater than or equal to the seventh threshold.
  • the seventh threshold and the eighth threshold are independently configured or pre-configured, wherein the eighth threshold is when resources in the resource set that are not recommended are determined based on the channel monitoring results of the second radio access technology sidelink communication.
  • the terminal device can execute the NR sidelink communication process according to the channel monitoring result of the LTE sidelink communication, thereby realizing the avoidance of the LTE sidelink communication by the NR sidelink communication, avoiding transmission resource collision, and realizing the LTE sidelink Dynamically share transmission resources on the same carrier frequency with NR sidelink to increase transmission resource usage efficiency.
  • the communication device 1000 is a network side device: the transceiver module 1001 is used to send configuration information to the terminal device; the terminal device is a terminal device that uses the second wireless access technology side link communication, and the configuration information includes a threshold configured for the terminal device, The threshold is a threshold used by the terminal device to perform the process of the second radio access technology sidelink communication based on the channel monitoring result of the first radio access technology sidelink communication; wherein the process includes at least one of the following processes : Resource selection or resource reselection; sidelink physical channel transmission; re-evaluation of resources to be transmitted; assessment of occupancy of resources to be transmitted; determination of auxiliary resource set information contained in inter-user assistance information.
  • the network side device can send configuration information to the terminal device, so that the terminal device can monitor the channel monitoring results of the LTE sidelink communication and execute the NR sidelink communication process based on the configuration information, thereby realizing NR sidelink communication. Avoid LTE sidelink communication to avoid transmission resource collisions, enable LTE sidelink and NR sidelink to dynamically share transmission resources on the same carrier frequency, and increase transmission resource usage efficiency.
  • FIG. 11 is a schematic structural diagram of another communication device 1100 provided by an embodiment of the present disclosure.
  • the communication device 1100 may be a network-side device, a terminal device, a chip, a chip system, a processor, etc. that supports a network-side device to implement the above method, or a chip or a chip system that supports a terminal device to implement the above method. , or processor, etc.
  • the device can be used to implement the method described in the above method embodiment. For details, please refer to the description in the above method embodiment.
  • Communication device 1100 may include one or more processors 1101.
  • the processor 1101 may be a general-purpose processor or a special-purpose processor, or the like.
  • it can be a baseband processor or a central processing unit.
  • the baseband processor can be used to process communication protocols and communication data.
  • the central processor can be used to control communication devices (such as base stations, baseband chips, terminal equipment, terminal equipment chips, DU or CU, etc.) and execute computer programs. , processing data for computer programs.
  • the communication device 1100 may also include one or more memories 1102, on which a computer program 1104 may be stored.
  • the processor 1101 executes the computer program 1104, so that the communication device 1100 performs the steps described in the above method embodiments. method.
  • the memory 1102 may also store data.
  • the communication device 1100 and the memory 1102 can be provided separately or integrated together.
  • the communication device 1100 may also include a transceiver 1105 and an antenna 1106.
  • the transceiver 1105 may be called a transceiver unit, a transceiver, a transceiver circuit, etc., and is used to implement transceiver functions.
  • the transceiver 1105 may include a receiver and a transmitter.
  • the receiver may be called a receiver or a receiving circuit, etc., used to implement the receiving function;
  • the transmitter may be called a transmitter, a transmitting circuit, etc., used to implement the transmitting function.
  • the communication device 1100 may also include one or more interface circuits 1107.
  • the interface circuit 1107 is used to receive code instructions and transmit them to the processor 1101 .
  • the processor 1101 executes the code instructions to cause the communication device 1100 to perform the method described in the above method embodiment.
  • the communication device 1100 is a terminal device: the processor 1101 is used to execute step S202 in FIG. 2; execute step S302 in FIG. 3; execute step S402 in FIG. 4; execute step S502 in FIG. 5; execute the steps in FIG. 6.
  • the transceiver 1105 is used to perform step S201 in Fig. 2; step S201 in Fig. 3; step S401 in Fig. 4; step S501 in Fig. 5; step S601 in Fig. 6; step S701 in Fig. 8 Step S801.
  • the communication device 1100 is a network-side device: the transceiver 1105 is used to perform step S901 in the figure.
  • the processor 1101 may include a transceiver for implementing receiving and transmitting functions.
  • the transceiver may be a transceiver circuit, an interface, or an interface circuit.
  • the transceiver circuits, interfaces or interface circuits used to implement the receiving and transmitting functions can be separate or integrated together.
  • the above-mentioned transceiver circuit, interface or interface circuit can be used for reading and writing codes/data, or the above-mentioned transceiver circuit, interface or interface circuit can be used for signal transmission or transfer.
  • the processor 1101 may store a computer program 1103, and the computer program 1103 runs on the processor 1101, causing the communication device 1100 to perform the method described in the above method embodiment.
  • the computer program 1103 may be solidified in the processor 1101, in which case the processor 1101 may be implemented by hardware.
  • the communication device 1100 may include a circuit, and the circuit may implement the functions of sending or receiving or communicating in the foregoing method embodiments.
  • the processors and transceivers described in this disclosure may be implemented on integrated circuits (ICs), analog ICs, radio frequency integrated circuits (RFICs), mixed signal ICs, application specific integrated circuits (ASICs), printed circuit boards ( printed circuit board (PCB), electronic equipment, etc.
  • the processor and transceiver can also be manufactured using various IC process technologies, such as complementary metal oxide semiconductor (CMOS), n-type metal oxide-semiconductor (NMOS), P-type Metal oxide semiconductor (positive channel metal oxide semiconductor, PMOS), bipolar junction transistor (BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.
  • CMOS complementary metal oxide semiconductor
  • NMOS n-type metal oxide-semiconductor
  • PMOS P-type Metal oxide semiconductor
  • BJT bipolar junction transistor
  • BiCMOS bipolar CMOS
  • SiGe silicon germanium
  • GaAs gallium arsenide
  • the communication device described in the above embodiments may be a network side device or a terminal device, but the scope of the communication device described in this disclosure is not limited thereto, and the structure of the communication device may not be limited by FIG. 11 .
  • the communication device may be a stand-alone device or may be part of a larger device.
  • the communication device may be:
  • the IC collection may also include storage components for storing data and computer programs;
  • the communication device may be a chip or a chip system
  • the schematic structural diagram of the chip shown in FIG. 12 refer to the schematic structural diagram of the chip shown in FIG. 12 .
  • the chip shown in Figure 12 includes a processor 1201 and an interface 1202.
  • the number of processors 1201 may be one or more, and the number of interfaces 1202 may be multiple.
  • the chip is used to implement part or all of the functions of the terminal equipment in the embodiments of the present disclosure.
  • the chip may have the functions of part or all of the terminal equipment in the embodiments of the disclosure, or may be capable of independently implementing any implementation of the disclosure.
  • Example function Alternatively, the chip is used to implement part or all of the functions of the network-side device in the embodiment of the present disclosure.
  • the chip may have the functions of part or all of the network-side device in the embodiment of the present disclosure, or may be capable of independently implementing the functions of the network-side device in the present disclosure. function of any embodiment.
  • the chip also includes a memory 1203, which is used to store necessary computer programs and data.
  • Embodiments of the present disclosure also provide a multi-radio access technology sidelink communication coexistence system.
  • the system includes the communication device as the terminal device and the communication device as the network side device in the embodiment of FIG. 10, or the system includes In the aforementioned embodiment of FIG. 11 , the communication device serves as the terminal device and the communication device serves as the network side device.
  • the present disclosure also provides a readable storage medium on which instructions are stored, and when the instructions are executed by a computer, the functions of any of the above method embodiments are implemented.
  • the present disclosure also provides a computer program product, which, when executed by a computer, implements the functions of any of the above method embodiments.
  • the above embodiments it may be implemented in whole or in part by software, hardware, firmware, or any combination thereof.
  • software it may be implemented in whole or in part in the form of a computer program product.
  • the computer program product includes one or more computer programs.
  • the computer program When the computer program is loaded and executed on a computer, the processes or functions described in accordance with the embodiments of the present disclosure are generated in whole or in part.
  • the computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device.
  • the computer program may be stored in or transferred from one computer-readable storage medium to another, for example, the computer program may be transferred from a website, computer, server, or data center Transmission to another website, computer, server or data center through wired (such as coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.) means.
  • the computer-readable storage medium may be any available medium that can be accessed by a computer or a data storage device such as a server, data center, etc. that contains one or more available media integrated.
  • the usable media may be magnetic media (e.g., floppy disks, hard disks, magnetic tapes), optical media (e.g., high-density digital video discs (DVD)), or semiconductor media (e.g., solid state disks, SSD)) etc.
  • magnetic media e.g., floppy disks, hard disks, magnetic tapes
  • optical media e.g., high-density digital video discs (DVD)
  • DVD digital video discs
  • semiconductor media e.g., solid state disks, SSD
  • At least one in the present disclosure can also be described as one or more, and the plurality can be two, three, four or more, and the present disclosure is not limited.
  • the technical feature is distinguished by “first”, “second”, “third”, “A”, “B”, “C” and “D” etc.
  • the technical features described in “first”, “second”, “third”, “A”, “B”, “C” and “D” are in no particular order or order.
  • each table in this disclosure can be configured or predefined.
  • the values of the information in each table are only examples and can be configured as other values, which is not limited by this disclosure.
  • it is not necessarily required to configure all the correspondences shown in each table.
  • the corresponding relationships shown in some rows may not be configured.
  • appropriate deformation adjustments can be made based on the above table, such as splitting, merging, etc.
  • the names of the parameters shown in the titles of the above tables may also be other names understandable by the communication device, and the values or expressions of the parameters may also be other values or expressions understandable by the communication device.
  • other data structures can also be used, such as arrays, queues, containers, stacks, linear lists, pointers, linked lists, trees, graphs, structures, classes, heaps, hash tables or hash tables. wait.
  • Predefinition in this disclosure may be understood as definition, pre-definition, storage, pre-storage, pre-negotiation, pre-configuration, solidification, or pre-burning.

Abstract

Les modes de réalisation de la présente divulgation concernent des procédés de coexistence de communication de liaison latérale selon de multiples technologies d'accès radioélectrique, et des dispositifs associés. Un procédé est exécuté par un dispositif terminal de communication de liaison latérale selon une deuxième technologie d'accès radioélectrique, et le procédé comprend : la réalisation d'une détection de canal sur une communication de liaison latérale selon une première technologie d'accès radioélectrique (S201) ; et, selon un résultat de détection de canal de la communication de liaison latérale selon une première technologie d'accès radioélectrique, l'exécution d'un processus de communication de liaison latérale selon la deuxième technologie d'accès radioélectrique (S202), le processus comprenant au moins un des processus suivants : une sélection de ressource ou une re-sélection de ressource, un envoi de canal physique de liaison latérale, une réévaluation d'une ressource à utiliser aux fins de transmission, une évaluation d'occupation de la ressource à utiliser aux fins de transmission, et une détermination d'informations d'ensemble de ressources auxiliaires incluses dans des informations d'assistance entre utilisateurs. Dans la présente solution technique, le dispositif terminal peut exécuter le processus d'une communication de liaison latérale selon une deuxième technologie d'accès radioélectrique selon le résultat de détection de canal, ce qui permet d'éviter une collision de ressources de transmission, de partager dynamiquement une ressource de transmission sur la même fréquence porteuse et d'améliorer l'efficacité d'utilisation de la ressource de transmission.
PCT/CN2022/089677 2022-04-27 2022-04-27 Procédés de coexistence de communication de liaison latérale selon de multiples technologies d'accès radioélectrique, et dispositifs associés WO2023206178A1 (fr)

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PCT/CN2022/089677 WO2023206178A1 (fr) 2022-04-27 2022-04-27 Procédés de coexistence de communication de liaison latérale selon de multiples technologies d'accès radioélectrique, et dispositifs associés
CN202280001379.0A CN115024004A (zh) 2022-04-27 2022-04-27 一种多无线接入技术侧行链路通信共存方法及其装置

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